[0001] The present invention relates to a system and method for measuring vibration. More
specifically, the present invention concerns a vehicle seat which has built into the
seat and other seat components such as armrests and control consoles accelerometers
or transducers which are coupled to a processor for recording and processing data
relating to the vibrations encountered by the occupant of the seat.
[0002] An increasing concern in the workplace is the amount of vibration an operator encounters
while operating various pieces of moving equipment such as motorized vehicles and
construction equipment such as, for example, a jackhammer and the like. Currently,
standards exist in the European Union which state that an operator should not be exposed
to conditions exceeding 1.15 m/s
2 for whole body vibration during an eight hour period. Monitoring and insuring that
an operator's exposure does not exceed prescribed limits is the responsibility of
the employer.
[0003] The problem, however, is that there are no known systems for monitoring whole body
vibration in a working environment. The only system known by Applicants for measuring
whole body vibration is a laboratory method set forth in ISO 10326-1:1992(E). The
laboratory method involves taping discs to the outside of a vehicle seat. As recommended
in ISO 10326-1, the discs have a raised center section so as to create a cavity in
which to place the accelerometer.
[0004] This laboratory design, however, suffers from several drawbacks that make it impractical
for use in actual working conditions. First, taping a disc to a piece equipment such
as a vehicle seat is not practical. Through normal usage it would almost be inevitable
that the disc would fall off of the equipment or be damaged during use by being exposed
to the working environment. Moreover, in a vehicle seat application, the disc, with
its raised section would be uncomfortable for an operator to sit upon, and this would
no doubt lead to the accelerometers being routinely removed. In addition, the laboratory
set-up does not provide a way to measure vibration at other locations such as at the
arms of an operator.
[0005] Nor would having discs taped to the equipment present an aesthetically pleasing appearance.
Once an accelerometer had either been removed, tampered with, fallen off, or simply
have been damaged by virtue of being left exposed to the working environment, the
ability to measure and record body vibration would be lost. Thus, there is a need
for a system that can measure and record body vibration while taking into account
the demanding needs of an actual working environment rather than a laboratory setting.
[0006] According to an aspect of the present invention, there is provided a system for measuring
motion encountered by an occupant of a vehicle as specified in Claim 1. The invention
is also directed to a method by which the described apparatus operates and including
method steps for carrying out every function of this apparatus. It is an object of
the present invention to overcome the above mentioned problems. Thus, according to
a first embodiment of the invention, there is provided on a piece of moving equipment,
such as a vehicle seat, at least one motion measuring device that may be located under
the seat cover and/or backrest cover. In another embodiment, the motion measuring
device may be housed within the cushions to measure the motion component experienced
by the seat occupant. Locating the motion measuring device in a location beneath the
outer surface of the equipment assists in eliminating operator discomfort and can
provide a secure and safe environment for the accelerometer.
[0007] In another embodiment, a motion measuring device may be located at other locations
occupied by an operator. Such locations include, but are not limited to, armrests
and control consoles.
[0008] The present invention may also include components for storing and/or processing the
motion related data. The system may also be equipped with an alarm to warn an operator
or employer that a prescribed limit is either approaching, has been reached or has
been exceeded. In addition, a personal, portable data storage device may be used which
accompanies the operator to any piece of equipment that may be used during the course
of the work day. Lastly, the system may be adapted to wirelessly transmit the motion
the data to other locations and devices as well.
[0009] The invention will be understood in greater detail from the following description
of preferred embodiments thereof, given by way of example only and with reference
to the accompanying drawings, in which:-
Figure 1 is a perspective view of one embodiment of the present invention;
Figure 2 is a perspective view illustrating how an embodiment of the present invention
may be used with a vehicle seat;
Figure 3 is a cross-sectional view taken along line 3-3 of Figure 2 of the drawings;
Figure 4 is a cross-sectional view taken along line 4-4 of Figure 2 of the drawings;
Figure 5 is a perspective view of second embodiment of the present invention;
Figure 6 is a perspective view illustrating how an embodiment of the present invention
may be used with an armrest and control console;
Figure 7 is a cross-sectional view taken along line 7-7 of Figure 6 of the drawings;
and
Figure 8 is a cross-sectional view taken along line 8-8 of Figure 6 of the drawings.
[0010] Referring now to the drawings and in particular to Figures 1 and 2, there is shown
a first embodiment in which there is disclosed a seat 10, which includes motion measuring
devices such as accelerometers 20 and 22. The motion measuring device may be designed
to measure motion such a vibration and/or acceleration in various directions such
as the x, y and z axes. While two accelerometers are shown in the preferred embodiment,
with accelerometer 20 having the ability to measure acceleration or motion in the
x, y, and z axes, and accelerometer 22 having the ability to measure acceleration
or motion in the x and y axes other motion measuring devices and configurations may
be used as well. For example, a single or multiple motion measuring devices may also
be used. In addition, the motion measuring device may be used to measure motion in
one direction or multiple directions.
[0011] As shown in Figures 2-4, the preferred motion measuring device is an accelerometer
20 which may be located in seat cushion 12 of seat 10 and accelerometer 22 which may
be located in backrest cushion 14. Both accelerometers are located under seat cover
13 and backrest cover 15. To accomplish this, the accelerometers and associated wiring
24 may be affixed to the backside of the covers prior to injecting foam into the seat
mold. Once foam is injected into the mold, the accelerometers and wiring are securely
held in place. Alternately, the accelerometers may be located in aperture 17 in seat
cushion 12 and aperture 19 in backrest cushion 14 as well.
[0012] Of course, the securement of the accelerometers and wiring may be accomplished in
other ways known to those of ordinary skill in the art as well. For example, in non-molding
applications, the accelerometers may simply be located in a pre-formed aperture in
a cushion prior to the attachment of the covers. Regardless of the method of manufacture
selected, locating the motion measuring device below the outer surface of equipment,
such as seat 10, will assist in maintaining the integrity of the apparatus.
[0013] Wiring 24 electronically connects the motion measuring device to a data processor
which may be located in housing 40. The types of data processors that may be used
include, but are not limited to, a microprocessor, digital signal processor, application
specific integrated circuit, random access memory, as well as other known processors
known to those of skill in the art.
[0014] The processor is configured to convert the data received from the motion measuring
device into a usable format, such as making the data recordable. In addition, housing
40 may also include an internal storage means for storing the data generated. The
internal storage means may include, but is not limited to, hard drives such as those
using random access memory and the like.
[0015] In addition, housing 40 may also include a dock 41 through which a portable data
storage device 70 or 72 maybe coupled to the system. The portable data storage device
may include, but is not limited to, a portable storage data unit 70 or a card 72.
The portable storage device may also employ magnetic technology. This technology includes,
but is not limited to, magnetic cards, tapes, floppy disks, hard disks, zip disks
and the like. Optical storage technology may be used as well. This technology includes,
but is not limited to, optical disks and the like. Other portable data storage devices
that may be used include, as described above, a storage unit 70 that contains random
access memory or a memory chip. Smart card technology may also be used to process
and/or store the data received from the motion measuring device. Such technology includes,
but is not limited to, integrated circuit microprocessor cards, integrated circuit
memory cards, optical memory cards and the like.
[0016] As shown in Figures 5-8, the present invention may also include embodiments in which
a motion measuring device is located in or integrally incorporated into either an
armrest 50 or a control console 60 or both. In one alternate embodiment, as shown
in Figure 6, a motion measuring device such as an accelerometer 62 may be located
in a control console 60. As with the accelerometers described above, the accelerometer
may be used to measure motion in the x, y, and z axes. Locating an accelerometer in
this position permits motion to be measured at a user's arm. As also shown in Figure
6, an accelerometer 64 may also be located in armrest 50. As with the accelerometers
described above, the accelerometer may be used to measure motion in the x, y, and
z axes. Locating a motion measuring device in this position permits motion to be measured
at a user's arm.
[0017] As with the embodiment shown in Figures 3 and 4, the motion measuring device is preferably
located under the outer surface of the control counsel. This may be done by locating
the measuring device under outer surface 53 as shown in Figure 7. Alternately, motion
measuring device 62 may be located in aperture 65 of a cushion 67.
[0018] Likewise, motion measuring device 64 should be located under the outer surface of
the armrest. This may be done by locating the measuring device under cover 71. Alternately,
motion measuring device 64 may be housed in aperture 73 of cushion 75.
[0019] Figure 6 illustrates another embodiment of the present invention. This embodiment
further includes a floating or movable motion measuring device 100. Measuring device
100 may be an accelerometer as described above. By the term floating, it is meant
that motion measuring device 100 may be placed or positioned in a wide variety of
desired locations. For example, motion measuring device 100 may attachable to user's
wrist or forearm so as to measure the vibration at this point on the operator. Motion
measuring device 100 maybe affixed in this application through the use of a wristband.
Of course, other ways to fasten measuring device 100 include, but are not limited
to, pins, clasps, Velcro, adhesive, and snaps as well as in other ways known to those
of skill art. In addition, movable measuring device 100 may also be located at other
points on the operator or at other locations on the equipment.
[0020] As is further illustrated in Figure 6, movable measuring device 100 is connected
to the system through flexible wiring 102. Alternately, a wireless connection may
be used as well to link measuring device 100 to the remainder of the system. Using
either a wireless connection or flexible hard wiring provides the versatility that
allows measuring device 100 to be positionable in a wide variety of desired locations.
[0021] Using a portable data storage 70 or 72 device enhances the utility of the system.
For example, multiple pieces of equipment may be provided with the necessary motion
measuring devices and processors with all of the processors being designed to work
the personal data storage device. Configuring the system in this manner allows an
operator to take a portable data storage device, which is personal to the operator,
from location to location and from one piece of equipment to another. Configuring
the system in this manner maintains an employer's ability to monitor and record the
total vibration encountered by the operator for a given work period no matter how
many different pieces of equipment are used by an operator.
[0022] The system may also be designed to recognize a unique identification code associated
with a particular operator. This allows the activation of the equipment to be conditioned
upon the proper recognition of an authorized user. The system may also be configured
to record the date and time a user operated a specific piece of equipment. This would
allow employers to retain the vibration data and create a long term record for future
use.
[0023] The data generated by the accelerometer may also be used to sound an alarm so as
to warn the operator or employer when a maximum or prescribed limit is about to be
reached or has been exceeded. The alarm may be visual in nature such as a warning
on a display monitor or audio in nature. Readout 90 of the data may also be displayed
to the operator or employer so that the vibrations encountered may be monitored. Lastly,
the data may be transmitted wirelessly to a remote location for use and storage by
an employer.
[0024] While the preferred embodiments of the present invention have been illustrated and
described, it will be understood by those of ordinary skill in the art that changes
and other modifications can be made without departing from the scope of the invention.
Various features of the present invention are set forth in the following claims.
1. A system for measuring motion encountered by an occupant of a vehicle comprising:
a seat having an outer surface;
a backrest having an outer surface;
at least one motion measuring means for generating data indicative of motion encountered
by an operator;
a processor means in communication with said motion measuring means, said processor
means formats generated data into recordable data; and
a data storage means for storing motion related data.
2. A system as claimed in claim 1, wherein said motion measuring means is an accelerometer.
3. A system as claimed in claim 1 or claim 2, wherein said processor means further permits
operation of the vehicle only upon recognizing an authorized operator.
4. A system as claimed in any one of claims 1 to 3, wherein said data storage means is
portable.
5. A system as claimed in any preceding claim, further comprising an alarm device which
is activated in response to a signal indicating that a preset limit for said generated
motion data has been exceeded.
6. A system as claimed in any preceding claim, further comprising one or more armrests
having mounted therein a motion measuring means for generating data indicative of
motion encountered by an operator.
7. A system as claimed in any preceding claim, further comprising a transmitter for receiving
generated motion data from said motion measuring means and transmitting said data
to a remote receiving station.
8. A system as claimed in any preceding claim, wherein said motion measuring means measures
motion in the direction of the x, y and z-axes.
9. A system as claimed in any one of claims 4 to 8, wherein the data storage means is
a magnetic card, an optical card or a disk.
10. A system as claimed in any one of claims 4 to 9, wherein said processor means and
data storage means is an integrated circuit microprocessor card.
11. A system as claimed in any preceding claim, further including additional motion measuring
means and processor means in association with additional pieces of equipment, and
a portable data storage means that is personal to an operator and operable with said
additional processor means on said additional equipment.
12. A system as claimed in any preceding claim, further comprising one or more control
consoles having mounted therein a motion measuring means for generating data indicative
of motion encountered by an operator.
13. A system as claimed in any preceding claim, wherein said motion measuring means is
movable and may be located at different locations relative to the seat and/or occupant.